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Evaluations of load-deformation behavior of soil nail using hyperbolic pullout model

机译:用双曲拉拔模型评估土钉的荷载变形行为

摘要

Soil nailing, as an effective stabilizing method for slopes and excavations, has been widely used worldwide. However, the interaction mechanism of a soil nail and the surrounding soil and its influential factors are not well understood. A pullout model using a hyperbolic shear stress-shear strain relationship is proposed to describe the load-deformation behavior of a cement grouted soil nail. Numerical analysis has been conducted to solve the governing equation and the distribution of tensile force along the nail length is investigated through a parametric study. The simulation results are highly consistent with laboratory soil nail pullout test results in the literature, indicating that the proposed model is efficient and accurate. Furthermore, the effects of key parameters, including normal stress, degree of saturation of soil, and surface roughness of soil nail, on the model parameters are studied in detail.
机译:土钉作为一种有效的斜坡和基坑开挖稳定方法,已在世界范围内广泛使用。但是,人们对土壤钉子与周围土壤的相互作用机理及其影响因素尚未完全了解。提出了一种使用双曲线剪切应力-剪切应变关系的拉拔模型来描述水泥灌浆土钉的荷载-变形行为。进行了数值分析以求解控制方程,并通过参数研究研究了沿钉子长度的拉力分布。仿真结果与文献中的实验室土钉拔出试验结果高度吻合,表明所提出的模型是有效且准确的。此外,还详细研究了关键参数(包括正应力,土壤饱和度和土钉表面粗糙度)对模型参数的影响。

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